使用CFD-DEM模型进行蒸的麦田冲压流干燥器的数学建模和设计
Thanit Swasdisevi1, Wut Thianngoen2, Somkiat Prachayawarakorn3
1Division of Thermal Technology, School of Energy, Environment and Materials, King Mongkut's University of Technology Thonburi, 126 Pracha u-tid Road, Tungkru, Bangkok 10140, Thailand.
Foods (Basel, Switzerland)
|May 25, 2024
概括
计算流体动力学和离散元素方法 (CFD-DEM) 准确地模拟了粒子在冲击流干燥器中的行为. 一个两阶段的冲击流设计显著提高了干燥效率,并减少了循环.
科学领域:
- 干燥技术 干燥技术
- 颗粒技术 颗粒技术
- 计算流体动力学的流体动力学.
背景情况:
- 阻塞流干燥器 (ISD) 由于复杂的空气颗粒传输,因此对颗粒物水分的去除非常有效.
- 计算流体动力学 (CFD) 和离散元件方法 (DEM) 对于模拟多相气固体流动越来越重要.
研究的目的:
- 预测一个同轴冲撞流干燥器中煮熟的米的多相运输现象.
- 调查撞击的流模式,以提高停留时间和干燥效率.
主要方法:
- 结合计算流体动力学 (CFD) 与离散元件方法 (DEM) 和下降干燥速率模型.
- 模拟的粒子运动和水分含量变化,在一个同轴ISD内,在煮熟的里.
- 评估了两阶段的冲击流设计,以提高干燥机性能.
主要成果:
- 与落下干燥模型相结合的CFD-DEM准确预测了颗粒的行为和水分含量,与实验数据保持一致.
- 模拟显示与17个干燥周期有很好的一致性,尽管平均停留时间预测略低于实验值.
- 一个两阶段的冲击流设计增加了约75%的停留时间,并将干燥周期从17缩短到10.
结论:
- 该CFD-DEM方法提供了一个可靠的工具来模拟碰撞的干燥器,并优化其设计.
- 拟议的两级冲击流模式可显著提高干燥效率和过程时间.
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